Mesh-type stabilizer for filamentary coated superconductors
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[0029] Second generation HTS wires that are manufactured using reel-to-reel thin film deposition techniques can attain considerable lengths. As the length of an individual segment of wire increases, the probability of a current-disrupting defect somewhere along the length of the wire increases. Localized current disruption may be caused by defects in the HTS layer, constrictions, thermal fluctuations, magnetic fields, electrical noise, or other causes of a local critical current depression in the superconducting layer. Therefore, the utility of second generation HTS wires is greatly enhanced by electrically stabilizing the wire to permit the bypassing of localized defects through an alternative electrically conductive pathway disposed along the length of the superconducting filament and in electrical contact with it. Previous techniques for stabilizing monolith HTS superconductor wires having a width of about 4 millimeters have made use of a sheet or layer of conducting material pla...
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